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影响斑马鱼(Danio rerio)脊索形成的突变。

Mutations affecting the formation of the notochord in the zebrafish, Danio rerio.

作者信息

Odenthal J, Haffter P, Vogelsang E, Brand M, van Eeden F J, Furutani-Seiki M, Granato M, Hammerschmidt M, Heisenberg C P, Jiang Y J, Kane D A, Kelsh R N, Mullins M C, Warga R M, Allende M L, Weinberg E S, Nüsslein-Volhard C

机构信息

MPI für Entwicklungsbiologie, Tübingen, Germany.

出版信息

Development. 1996 Dec;123:103-15. doi: 10.1242/dev.123.1.103.

Abstract

In a large scale screen for mutants with defects in the embryonic development of the zebrafish we identified mutations in four genes,floating head (flh), momo (mom), no tail (ntl), and doc, that are required for early notochord formation. Mutations in flh and ntl have been described previously, while mom and doc are newly identified genes. Mutant mom embryos lack a notochord in the trunk, and trunk somites from the right and left side of the embryo fuse underneath the neural tube. In this respect mom appears similar to flh. In contrast, notochord precursor cells are present in both ntl and doc embryos. In order to gain a greater understanding of the phenotypes, we have analysed the expression of several axial mesoderm markers in mutant embryos of all four genes. In flh and mom, Ntl expression is normal in the germ ring and tailbud, while the expression of Ntl and other notochord markers in the axial mesodermal region is disrupted. Ntl expression is normal in doc embryos until early somitic stages, when there is a reduction in expression which is first seen in anterior regions of the embryo. This suggests a function for doc in the maintenance of ntl expression. Other notochord markers such as twist, sonic hedgehog and axial are not expressed in the axial mesoderm of ntl embryos, their expression parallels the expression of ntl in the axial mesoderm of mutant doc, flh and mom embryos, indicating that ntl is required for the expression of these markers. The role of doc in the expression of the notochord markers appears indirect via ntl. Floor plate formation is disrupted in most regions in flh and mom mutant embryos but is present in mutant ntl and doc embryos. In mutant embryos with strong ntl alleles the band of cells expressing floor plate markers is broadened. A similar broadening is also observed in the axial mesoderm underlying the floor plate of ntl embryos, suggesting a direct involvement of the notochord precursor cells in floor plate induction. Mutations in all of these four genes result in embryos lacking a horizontal myoseptum and muscle pioneer cells, both of which are thought to be induced by the notochord. These somite defects can be traced back to an impairment of the specification of the adaxial cells during early stages of development. Transplantation of wild-type cells into mutant doc embryos reveals that wild-type notochord cells are sufficient to induce horizontal myoseptum formation in the flanking mutant tissue. Thus doc, like flh and ntl, acts cell autonomously in the notochord. In addition to the four mutants with defects in early notochord formation, we have isolated 84 mutants, defining at least 15 genes, with defects in later stages of notochord development. These are listed in an appendix to this study.

摘要

在一项针对斑马鱼胚胎发育缺陷突变体的大规模筛选中,我们鉴定出四个基因(浮头基因(flh)、momo基因(mom)、无尾基因(ntl)和doc基因)中的突变,这些基因是早期脊索形成所必需的。flh和ntl中的突变先前已有描述,而mom和doc是新鉴定出的基因。突变的mom胚胎在躯干中缺乏脊索,并且胚胎左右两侧的躯干体节在神经管下方融合。在这方面,mom似乎与flh相似。相比之下,ntl和doc胚胎中存在脊索前体细胞。为了更深入地了解这些表型,我们分析了所有这四个基因的突变胚胎中几种轴向中胚层标记物的表达情况。在flh和mom中,Ntl在胚环和尾芽中的表达正常,而Ntl和其他脊索标记物在轴向中胚层区域的表达受到破坏。在doc胚胎中,直到早期体节阶段Ntl的表达都是正常的,此时表达量开始降低,首先出现在胚胎的前部区域。这表明doc在维持ntl表达中具有功能。其他脊索标记物,如twist、音猬因子和轴向蛋白,在ntl胚胎的轴向中胚层中不表达,它们的表达与突变的doc、flh和mom胚胎轴向中胚层中ntl的表达平行,这表明ntl是这些标记物表达所必需的。doc在脊索标记物表达中的作用似乎是通过ntl间接发挥的。在flh和mom突变胚胎的大多数区域,底板形成受到破坏,但在ntl和doc突变胚胎中存在。在具有强ntl等位基因的突变胚胎中,表达底板标记物的细胞带变宽。在ntl胚胎底板下方的轴向中胚层中也观察到类似的变宽现象,这表明脊索前体细胞直接参与底板诱导。这四个基因中的所有突变都会导致胚胎缺乏水平肌隔和肌肉先驱细胞,这两者都被认为是由脊索诱导产生的。这些体节缺陷可追溯到发育早期近轴细胞特化的受损。将野生型细胞移植到突变的doc胚胎中发现,野生型脊索细胞足以诱导侧翼突变组织中水平肌隔的形成。因此,doc与flh和ntl一样,在脊索中自主发挥作用。除了这四个早期脊索形成有缺陷的突变体之外,我们还分离出了84个突变体,它们定义了至少15个基因,这些突变体在脊索发育后期存在缺陷。这些突变体列在本研究的附录中。

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